Soil-Transmitted Helminths: Parasite load and viability amidst mass drug administration in Ibadan, Southwestern Nigeria

https://dx.doi.org/10.4314/njpar.v42i2.1

Authors

  • Oyebamiji, D. A Parasitology Research Unit, Department of Zoology, Faculty of Science, University of Ibadan, Oyo State, Nigeria
  • Hassan, A. A Parasitology Research Unit, Department of Zoology, Faculty of Science, University of Ibadan, Oyo State, Nigeria

Keywords:

Viability, Intensity, Drug usage, Voluntary participants, Faecal samples

Abstract

Presently, the operational strategies for the control of Soil-Transmitted Helminths (STHs) has been via Mass Drug Administration (MDA) which primarily targets school and pre-school age children, child-bearing age women, including adults with high-risk occupations. Therefore, this study was done to relate the frequency of drug usage by the host to the intensity and viability of STH ova in the faecal samples collected in 11 study areas (Alakia, Akanran, Molete, Aleshinloye, Iwo Road, Eleyele, Bodija, Moniya, Olodo, Omi Adio and Podo) within Ibadan methropolis. A total of 1100 faecal samples were collected from voluntary participants between January and December 2018 and a standard Kato-Katz techniques was used for diagnosis. Well-structured questionnaire to acquire data on the demographics and usage of drug against STH infections was administered to each of the consenting participants. SPSS version 21 was used to analyze the data;ANOVAat p< 0.05. Faecal samples (35.9%) had one species of parasite minimally. Ascaris had the highest prevalence of 41.6%, followed by 24.5%, 23.5% and 10.4% for Trichuris, hookworm and Strongyloides species respectively. The parasite specific prevalence varied significantly (p≤0.05). Bodija had the highest frequency of drug usage with the least viability (6.1%) and intensity (5.4%). There is a negative correlation between frequency of drug usage and intensity (r= -0.39) and viability (r= -0.35) across the sampling locations. The STH infection prevalence observed could be attributed to poor environmental sanitation, poor personal hygiene arising from several factors such as lack of adequate sanitary facilities and other associated risk in the study locations. The decrease in viability and intensity of STH with respect to level of MDA drug usage might be significant to anticipated effectiveness and eventual success of MDA programmes in Ibadan environs.

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References

World Health Organization. 2011. Helminth control in school-age children: a guide for managers of control programmes. Geneva, Switzerland: WHO, 2011.

World Health Organization. 2012. Helminthiases as a public health problem in children: progress report 2001– 2010 and strategic plan 2011–2020. Geneva, Switzerland: WHO, 2012.

Farrell, S. H., Luc E Coffeng, James E Truscott, Marleen Werkman, Jaspreet Toor, Sake J de Vlas, and Roy M Anderson. 2018. Investigating the Effectiveness of Current and Modified World Health Organization Guidelines for the Control of SoilTransmitted Helminth Infections. Clin Infect Dis. 15; 66(4): S253–S259.doi: 10.1093/cid/ciy002

Jia, T.W., et al. 2012. Soil-transmitted helminth reinfection after drug treatment: a systematic review and meta- analysis. PLoS Negl. Trop. Dis. 6(5): p. e1621. https://doi.org/10.1371/journal.pntd.00016 21 PMID: 22590656

Collender, P.A., Kirby, A.E., Addiss, D.G., Matthew, C.F. and Justin, V.R. 2015.Methods for Quantification of SoilTransmitted Helminths in Environmental media: Current Techniques and Recent Advances. Trends in Parasitology. 31: 12

Ohta, N. and Waikagul, J. 2007. Disease burden and epidemiology of soil transmitted helminthiases and schistosomiasis in Asia: the Japanese perspective. Trends Parasitol. 23(1):30–5.View ArticlePubMedGoogle Scholar

Anderson, R.M., Truscott, J.E., Easton, A., Oliveira, R., Brooker, S. and Hollingsworth, D. 2013. How frequently and to whom should mass chemotherapy be administered to control soil transmitted helminths? In: American Society for Tropical Medicine and Hygiene Annual Meeting Presentations. Washington DC, USA; 2013. 151.

Truscott, J.E., Hollingsworth, T.D., Brooker, S.J. and Anderson, R.M. 2014. Can chemotherapy alone eliminate the transmission of soil-transmitted helminths. Parasit Vectors. 7(1):266.PubMed CentralView ArticlePubMedGoogle Scholar.

Dunn, J.C., Hugo, C. Turner, Aung Tun and Roy M. Anderson 2016. Epidemiological surveys of, and research on, soil-transmitted helminths in Southeast Asia: a systematic review. Parasites & Vectors. 9:31

Levecke, B., Behnke, J.M., Ajjampur, S.S.R., Albonico, M., Ame, S.M. and Charlier, J. 2011. A comparison of the sensitivity and fecal egg counts of the McMaster egg counting and Kato-Katz thick smear methods for soil- transmitted helminths. PLoS Negl. Trop. Dis. 5(6):e1201

Oyebamiji, D.A., Ebisike, A.N., Egede, J.O. and Hassan,A.A. 2018. Knowledge, attitude and practice in respect to soil contamination by Soil-Transmitted Helminths in Ibadan, Southwestern Nigeria. Para. Epide. Cont. e00075. doi:10.1016/j.parepi.2018.e00075

Ojurongbe, O., Awe, A.F., Olowe, A.O., Okanlawon, B.M. and Adeyeba, A.O. 2010. Prevalence of Soil Transmitted Helminth Infections in a Tertiary Institution in Western Nigeria. New York Sci. J. 3(1): 1-5

Auta, T., Wartu, J.R., Jibiya, B.A. and Jabbi, A.M. 2014. A comparative study on the prevalence of intestinal helminthes among rural and sub-urban pupils in Gwagwada, Nigeria. Academic J. 5 (6): 87-91

Odoba, M.B., Otalu, O. and Balogun, J.B. 2012. Prevalence of helminth Parasite Eggs in Pupils and Playing Grounds of some Selected Primary Schools in Zaria, Nigeria. World Journal of Life Sciences and Medical Research. 2(5):192

Pham-Duc, P., Nguyen-Viet, H., Hattendorf, J., Zinsstag, J., Phung-Dac, C., Zurbrugg, C. and Odematt, P. 2013. Ascaris lumbricoides and Trichuris trichiura infections associated with waste water and human excreta use in agriculture in Vietnam. Parasitology International. 62:172-180

Katz, K.N., Chaves, A. and Pellegrino, J. 1972. A simple device for quantitative stool thick-smear technique in Schistosoma mansoni. Rev. Inst. Med. Trop. Sao Paulo. 14; 397-400

WHO. 1985. Diagnostic techniques for intestinal parasitic infections (IPI) applicable to primary health care (PHC) services. Geneva: WHO

Moncayo, A.L., Lovato, R., and Cooper, P.J. 2018. Soil-transmitted helminth infections and nutritional status in Ecuador; findings from a national survey and implications for control strategies. BMJ Open. 8;e021319

Fafunwa, T.S., Mogaji, H.O., Oluwole, A.S., Adeniran, A.A., Fagbenro, M.T., SamWobo, S.O., Bada, B.S. and Ekpo, U.F. 2017. Water Resource, Hygienic Practice, and Soil Transmitted Helminthiasis in Some Rural Communities of Osun State, Nigeria. Journal of Water Resource and Protection. 9, 99-110.

WHO. 2002. Prevention and Control of Schistosomiasis and Soil-transmitted helminthiasis. WHO Technical Series Report 912. Geneva: WHO, 2002

Dada–Adegbola HO and Bakare R. A. 2005. Strongyloides stercoralis and diarrhoea in children. Africa Med. Sci. 34(3):263.

Oluwole, A.S., Ekpo, U.F., KaragiannisVoules, D.A., Abe, E.M., Olamiju, F.O. and Isiyaku, S. 2015. Bayesian Geostatistical Model-Based Estimates of Soil-Transmitted Helminth Infection in Nigeria, Including Annual Deworming Requirements. PLoS Neglected Tropical Diseases. 9(4): e0003740.

Ojurongbe, O., Oyesiji, K.F., Ojo, J.A., Odewale, G., Adefioye, O.A., Olowe, A.O., Opaleye, O.O., Bolaji, O.S. and Ojurongbe, T.A. 2014. Soil transmitted helminth infections among primary school children in Ile-ife Southwest, Nigeria: A cross sectional study. International Research Journal of Medicine and Medical Sciences, 2(1): 6-10.

Hassan, A.A., Oyebamiji, D.A. and Idowu, O.F. 2017. Spatial patterns of soiltransmitted helminths in soil environment around Ibadan, an endemic area in southwest Nigeria. Nigerian Journal of Parasitology. 38(2): 179- 184.

Clarke, N.E., Clements, A.C., Doi, S.A., Wang, D., Campbell, S.J. and Gray, D. 2017. Differential effect of mass deworming and targeted deworming campaigns for soiltransmitted helminth control in children: a systematic review and meta-analysis. Lancet. 389: 287–297. doi: 10.1016/S0140- 6736(16)32123-7

World Health Organization (WHO) 2017. Soil transmitted helminthes infections. Geneva: WHO.

Bennett, A. and Guyatt, H. 2000. Reducing intestinal nematode infection: efficacy of albendazole and mebendazole. Parasitol Today. 16(2):71-4.

Campbell, S.J., Nery, S.V. and Wardell, R. 2017. Water, sanitation and hygiene (WASH) and environmental risk factors for soiltransmitted helminth intensity of infection in Timor-Leste, using real time PCR. PLoS Neglected Tropical Diseases. 11:e0005393.

Published

2023-07-08

How to Cite

D. A, O., & A. A, H. (2023). Soil-Transmitted Helminths: Parasite load and viability amidst mass drug administration in Ibadan, Southwestern Nigeria: https://dx.doi.org/10.4314/njpar.v42i2.1. Nigerian Journal of Parasitology, 42(2), 186–193. Retrieved from https://njpar.com.ng/index.php/home/article/view/217

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